Slitting device for optical glass manufacturing

By introducing a linkage structure of splicing sleeve, mating sleeve and limiting mechanism into the optical glass slitting device, combined with motor-driven transmission wheel, the problems of cumbersome position adjustment and complicated slitting blade replacement in the existing device are solved, and efficient and stable optical glass cutting is achieved.

CN223592603UActive Publication Date: 2025-11-25SHIJIAZHUANG FANXING GLASS PRODUCTS CO LTD
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Patent Information

Application Number
CN202423168042.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-25
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing optical glass slitting equipment requires manual adjustment of the glass position, resulting in low production efficiency and low cutting accuracy. The replacement of the slitting blade is complicated and unstable, affecting equipment safety and production efficiency.

Method used

The device employs a splicing sleeve, a mating sleeve, and a suitable linkage structure, combined with a limiting mechanism and a sliding slider design, to achieve rapid installation and disassembly of the slitting blade. The motor-driven transmission wheel ensures the stability and precise displacement of the device.

Benefits of technology

It improves the precision and production efficiency of optical glass cutting, simplifies the slitting blade replacement process, and ensures the stability and safety of the equipment during high-speed rotation.

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Abstract

The utility model discloses a slitting device for manufacturing optical glass, which comprises a base, the base is provided with a slitting device, the base is provided with a splicing device, the splicing device comprises a splicing sleeve, a matching sleeve, a matching groove, a matching plate, an adapting sleeve, a clamping mechanism, a splicing rod, a matching block, an adapting rod and an adapting groove, the matching groove is spirally arranged on the outer side of the matching sleeve, and the matching sleeve is arranged on the outer side of the matching block. The matching block is connected with the matching sleeve through the matching plate, the matching rod is arranged in the matching groove, the matching groove is formed in the inner side of the matching sleeve, a limiting mechanism is arranged on the outer side of the splicing sleeve and comprises a limiting sleeve, a reset groove, a reset hole, a reset sleeve, a reset spring, a reset block, a connecting block, a movable rod and a movable plate, and the reset groove is formed in the reset sleeve. According to the slitting cutter replacing device, the machining efficiency and the machining precision of equipment are improved, the slitting cutter replacing efficiency is improved, and meanwhile the structural stability effect is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to optical glass manufacturing technical field more specifically, it relates to a kind of slitting device for optical glass manufacturing. BACKGROUND

[0002] In the current technical field, the slitting device for optical glass manufacturing is the key equipment in the production process of optical glass, which is used to accurately cut the optical glass to meet the specific requirements of optical instruments on the size and shape of glass. Optical glass is a special glass material with high transparency, low dispersion and excellent optical properties, widely used in optical instruments such as microscopes, telescopes, cameras, etc. However, the existing slitting device has some obvious deficiencies in design.

[0003] Firstly, the existing slitting device has a relatively simple structure. When the optical glass needs to be slitted, the operator must manually adjust the position of the glass to ensure that the cutting knife can accurately aim at the position to be cut. This manual adjustment method not only consumes time and effort, but also is complicated in operation process, which easily leads to low production efficiency and increases the working intensity of the operator. In addition, the positioning error that may occur during manual adjustment may also affect the cutting accuracy and thus the quality of the optical glass.

[0004] Secondly, in the existing technology, the slitting knife usually cuts the optical glass by high-speed rotation. However, the slitting knife needs to be replaced regularly due to wear and tear or other reasons. Unfortunately, the installation and disassembly operation of the slitting knife in the existing technology is usually quite complex, which requires professional personnel to use special tools for operation. This not only prolongs the downtime of the equipment and increases the maintenance cost, but also cannot quickly replace the slitting knife in emergency situations, which may cause the production line to stop and result in production loss.

[0005] In addition, although some improved slitting devices have appeared on the market, aiming to realize the quick installation and disassembly of the slitting knife for easy replacement, the structure of these devices is often too simplified and the mechanism is not perfect. In actual application, these devices are prone to stability problems when the slitting knife rotates at high speed. The fixing structure may loosen or even fall off due to vibration. Once the slitting knife loses its fixation, it not only affects the cutting quality, but also poses a threat to the safety of the operator and the equipment. SUMMARY

[0006] (I) Technical problem solved

[0007] In view of the problems existing in the prior art, the utility model provides a slitting device for optical glass manufacturing to solve the technical problems mentioned in the background art.

[0008] (II) Technical solution

[0009] In order to achieve the above object, the utility model provides following technical scheme: a cutting device for optical glass manufacturing, it is characterized by being provided with cutting device on the base, it is provided with splicing device on the base, the splicing device includes splicing sleeve, cooperation sleeve, cooperation groove, cooperation board, adaptive sleeve, clamping mechanism, splicing rod, cooperation block, adaptive rod and adaptive groove, the splicing sleeve is detachably arranged outside splicing rod, the cooperation sleeve is rotatably arranged outside splicing sleeve, the cooperation groove is spirally arranged outside cooperation sleeve, the cooperation block is connected through cooperation board and cooperation sleeve, and the cooperation block is slidably arranged in cooperation groove, the adaptive sleeve is slidably arranged outside splicing sleeve, the adaptive rod is slidably arranged in adaptive groove, the adaptive groove is arranged inside adaptive sleeve, the outside of splicing sleeve is provided with limiting mechanism, the limiting mechanism includes limiting sleeve, reset groove, reset hole, reset sleeve, reset spring, reset block, connecting block, movable rod and movable plate, the limiting sleeve is slidably arranged outside splicing sleeve, the reset groove is arranged on reset sleeve, the reset hole is arranged at one end of reset groove, the reset spring is connected to reset block and connecting block at both ends, the reset block is connected to one side of reset sleeve, the connecting block is fixedly arranged outside splicing sleeve, the movable rod is fixedly connected to one side of limiting sleeve, and the movable plate is fixedly arranged on movable rod.

[0010] The utility model further sets up, the clamping mechanism includes splicing groove and splicing frame, the splicing frame is slidably arranged in the side wall of splicing sleeve, the splicing groove is arranged outside splicing rod, and one end of splicing rod is inserted into splicing groove, and the adaptive rod is fixedly arranged at both sides of splicing frame.

[0011] The utility model further sets up, and the sliding slot is arranged outside splicing sleeve, the sliding block is arranged in the inside of limiting sleeve.

[0012] The utility model further sets up, and the limiting rod is slidably arranged on the side wall of cooperation sleeve, one end of limiting rod is connected with connecting spring, one end of limiting rod is connected with cooperation sleeve outer wall through connecting spring, a plurality of limiting grooves are arranged outside splicing sleeve, and the other end of limiting rod is inserted into limiting groove.

[0013] The utility model further sets up, and the movable spring is arranged outside movable rod, the movable spring is connected to one side of limiting sleeve, and the other end of movable spring is connected with reset sleeve in contact mode.

[0014] The utility model further sets up, the slitting device includes slitting knife, mounting plate, mounting block, drive frame, drive assembly, protective cover, movable frame and sliding frame, mounting plate and mounting block are installed at slitting knife both sides respectively, drive frame sets up on the sliding frame, drive assembly can be detached and installed in drive frame one side, drive assembly output and mounting block carry out detachable connection, the sliding frame can be detached and installed between movable frame, movable frame sets up on the base, protective cover can be detached and installed in drive assembly one side.

[0015] The utility model further sets up, movable frame and sliding frame one side can detachable with motor, motor output, drive frame and movable frame one side all are equipped with transmission wheel, transmission wheel outside is equipped with the belt, and the both ends of belt are detachable with base, and the above-mentioned component has provided stable power support.

[0016] The utility model further sets up, base and sliding frame inboard can detachable with slide rail, movable frame and drive frame inboard all movably be equipped with pulley, and pulley rotation sets up in slide rail both sides, and the use of slide rail and pulley ensures the stability of equipment movement.

[0017] (Three) beneficial effects

[0018] Compared with the prior art, the utility model provides a slitting device for optical glass manufacturing, has the following beneficial effects:

[0019] 1, through setting up slitting device on the base, including the ingenious cooperation of slitting knife, mounting plate, mounting block, drive frame, drive assembly, protective cover, movable frame and sliding frame, transmission wheel is driven along the belt operation through motor, realizes the accurate displacement of movable frame and drive frame and sliding frame, the flexible rotation of pulley on slide rail ensures the stability of the whole device when moving in longitudinal and transverse direction, so that the slitting knife can be accurately positioned to the required cutting position, completely solves the problem that traditional equipment needs to manually adjust the position of optical glass, greatly improves work efficiency and cutting precision.

[0020] 2, in the aspect of splicing device, the application adopts the linkage structure of innovative splicing sleeve, matching sleeve and adaptive sleeve, through the accurate cooperation of splicing rod and splicing groove, and the guiding sliding of matching block in spiral matching groove, realizes the quick installation and disassembly of slitting knife, especially the ingenious cooperation of adaptive groove in adaptive sleeve and adaptive rod, so that the splicing frame can be smoothly inserted or separated from the splicing groove, significantly simplifies the replacement process of slitting knife, effectively shortens the equipment downtime.

[0021] 3、The design of the limiting mechanism is particularly ingenious, through the cooperative work of the limiting sleeve, the reset sleeve and the reset block, combined with the double elastic protection of the reset spring and the movable spring, a complete anti-loose system is constructed, the accurate cooperation of the reset groove and the movable rod, plus the design that the limiting rod is firmly inserted into the limiting groove, and the limiting of the limiting sleeve to the limiting rod, ensure the stability of the whole structure when the slitting knife rotates at high speed, especially the linkage design of the movable plate and the reset hole, combined with the guiding and limiting effect of the sliding block in the sliding groove, a multiple insurance mechanism is formed, which ensures the safe operation of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a whole structure schematic view of the slitting device for manufacturing optical glass in the utility model;

[0023] Figure 2 It is a sectional structure schematic view of the movable frame part in the utility model;

[0024] Figure 3 It is a structure schematic view of the slitting knife part in the utility model;

[0025] Figure 4 It is a structure schematic view of the splicing device and the limiting mechanism part in the utility model;

[0026] Figure 5 It is a sectional structure schematic view of the splicing device and the limiting mechanism part in the utility model;

[0027] Figure 6 It is Figure 5 A local enlarged structure schematic view of the part A in the utility model;

[0028] Figure 7 It is Figure 5 A local enlarged structure schematic view of the part B in the utility model;

[0029] Figure 8 It is a sectional structure schematic view of the splicing device and the limiting mechanism part in the utility model at the second angle.

[0030] In the figure: 1, base; 2, splicing sleeve; 3, matching sleeve; 4, matching groove; 5, matching plate; 6, adaptive sleeve; 7, splicing rod; 8, matching block; 9, adaptive rod; 10, adaptive groove; 11, limiting sleeve; 12, reset groove; 13, reset hole; 14, reset sleeve; 15, reset spring; 16, reset block; 17, connecting block; 18, movable rod; 19, movable plate; 20, splicing groove; 21, splicing frame; 22, sliding groove; 23, sliding block; 24, limiting rod; 25, connecting spring; 26, limiting groove; 27, movable spring; 28, slitting cutter; 29, mounting plate; 30, mounting block; 31, driving frame; 32, driving assembly; 33, protective cover; 34, movable frame; 35, sliding frame; 36, motor; 37, transmission wheel; 38, belt; 39, sliding rail; 40, pulley. DETAILED DESCRIPTION

[0031] It should be noted that the embodiments and features in the embodiments in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the drawings and in combination with embodiments.

[0032] It should be noted that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as generally understood by those skilled in the art to which the present application belongs.

[0033] In the present application, unless otherwise specified, the directions used such as "up, down" are generally with respect to the directions shown in the drawings, or with respect to the vertical, perpendicular or gravitational direction; similarly, for the convenience of understanding and description, "left, right" are generally with respect to the left and right shown in the drawings; "inner, outer" refer to the inner and outer with respect to the contour of each component itself, but the above directional words are not used to limit the present application.

[0034] Please refer to Figures 1-8The application discloses a cutting device for optical glass manufacturing, which comprises a base 1, a cutting device arranged on the base 1, a splicing device arranged on the base 1, a splicing sleeve 2, a matching sleeve 3, a matching groove 4, a matching plate 5, an adaptive sleeve 6, a clamping mechanism, a splicing rod 7, a matching block 8, an adaptive rod 9 and an adaptive groove 10, the splicing sleeve 2 is detachably arranged outside the splicing rod 7, the matching sleeve 3 is rotatably arranged outside the splicing sleeve 2, the matching groove 4 is spirally arranged outside the matching sleeve 3, the matching block 8 is connected through the matching plate 5 and the matching sleeve 3 and is slidably arranged in the matching groove 4, the adaptive sleeve 6 is slidably arranged outside the splicing sleeve 2, the adaptive rod 9 is slidably arranged in the adaptive groove 10, the adaptive groove 10 is arranged inside the adaptive sleeve 6, a limiting mechanism is arranged outside the splicing sleeve 2, the limiting mechanism comprises a limiting sleeve 11, a reset groove 12, a reset hole 13, a reset sleeve 14, a reset spring 15, a reset block 16, a connecting block 17, a movable rod 18 and a movable plate 19, the limiting sleeve 11 is slidably arranged outside the splicing sleeve 2, the reset groove 12 is arranged on the reset sleeve 14, the reset hole 13 is arranged at one end of the reset groove 12, the reset spring 15 is connected at both ends with the reset block 16 and the connecting block 17, the reset block 16 is connected at one side of the reset sleeve 14, the connecting block 17 is fixedly arranged outside the splicing sleeve 2, the movable rod 18 is fixedly connected at one side of the limiting sleeve 11, and the movable plate 19 is fixedly arranged on the movable rod 18.

[0035] The clamping mechanism comprises a splicing groove 20 and a splicing frame 21, the splicing frame 21 is slidably arranged on the side wall of the splicing sleeve 2, the splicing groove 20 is arranged outside the splicing rod 7, and one end of the splicing rod 7 is inserted into the splicing groove 20, and the adaptive rod 9 is fixedly arranged at both sides of the splicing frame 21.

[0036] A sliding groove 22 is arranged outside the splicing sleeve 2, a sliding block 23 is arranged inside the limiting sleeve 11, and the sliding block 23 is slidably arranged in the sliding groove 22.

[0037] A limiting rod 24 is slidably arranged on the side wall of the matching sleeve 3, a connecting spring 25 is arranged at one end of the limiting rod 24, one end of the limiting rod 24 is connected with the connecting spring 25 and connected with the outer wall of the matching sleeve 3, a plurality of limiting grooves 26 are arranged outside the splicing sleeve 2, and the other end of the limiting rod 24 is inserted into the limiting groove 26.

[0038] A movable spring 27 is arranged outside the movable rod 18, one side of the movable spring 27 is connected with the limiting sleeve 11, and the other end of the movable spring 27 is connected with the reset sleeve 14 in a contact mode.

[0039] In this embodiment, when the slitting knife 28 needs to be replaced, first rotate the reset sleeve 14, which drives the reset block 16 to rotate, and then the reset block 16 cooperates with the connecting block 17 to press the reset spring 15, at the same time, the reset sleeve 14 drives the reset slot 12 and the reset hole 13 to rotate, when the reset spring 15 is pressed to the limit, the reset hole 13 moves to the position concentric with the movable plate 19, then push the limiting sleeve 11, which drives the movable plate 19, the movable rod 18 and the sliding block 23 to slide along the sliding groove 22, at the same time, the limiting sleeve 11 cooperates with the reset sleeve 14 to press the movable spring 27 outside the movable rod 18, when the movable spring 27 is pressed to the limit, the corresponding movable plate 19 just passes through the reset hole 13 and reaches the side of the reset sleeve 14, then release the reset sleeve 14, the reset spring 15 will push the reset block 16 to reset, then the reset block 16 drives the reset sleeve 14 to rotate and reset, then the reset sleeve 14 drives the reset slot 12 and the reset hole 13 to rotate, then the movable rod 18 enters the reset slot 12, and then the movable rod 18 and the corresponding movable plate 19 cooperate to limit the limiting sleeve 11 to one side of the reset sleeve 14, at this time the outer end of the limiting rod 24 loses the limiting of the limiting sleeve 11, then rotate the fitting sleeve 3, which drives the limiting rod 24 on the side wall to move, then the limiting slot 26 side wall presses one end of the limiting rod 24, due to the round corner design of the edge of the limiting slot 26 and the end of the limiting rod 24, then the end of the limiting rod 24 slides out of the limiting slot 26, then the other end of the limiting rod 24 drives the connecting spring 25 to stretch, at the same time, the fitting sleeve 3 drives the fitting block 8 to rotate through the fitting plate 5, then the fitting block 8 rotates along the fitting slot 4, due to the spiral structure design of the fitting slot 4, and due to the limiting of the splicing frame 21, the fitting sleeve 6 drives the fitting slot 4 and the fitting groove 10 to slide, due to the special structure design of the fitting groove 10, when the fitting groove 10 slides with the fitting sleeve 6, the fitting rod 9 drives the splicing frame 21 to slide out of the splicing slot 20, then pull the splicing sleeve 2 to one side, that is, the splicing sleeve 2 can be removed, then remove the mounting plate 29, then remove the slitting knife 28, then replace the slitting knife 28, then make the splicing rod 7 fixedly connected to one side of the mounting block 30 pass through the mounting hole reserved on the slitting knife 28 and the mounting plate 29, then fit the splicing sleeve 2 to the outside of the splicing rod 7 from the other side of the mounting plate 29, then rotate the fitting sleeve 3 in reverse, which drives the fitting block 8 to rotate through the fitting plate 5 on one side, then the fitting block 8 and the fitting slot 4 cooperate to make the fitting sleeve 6 drive the fitting groove 10 and the fitting slot 4 to slide and reset, then the fitting rod 9 slides and resets in the fitting groove 10, at the same time, the fitting rod 9 drives the splicing frame 21 to slide and insert into the splicing slot 20, at this time the connecting spring 25 drives the limiting rod 24 to reset, so that the limiting rod 24 reinserts into the original limiting slot 26, then rotate the reset sleeve 14 again, which drives the reset block 16, the reset slot 12 and the reset spring 15 to move,Then reset the block 16 and connecting block 17 cooperation on reset spring 15 extrusion, while the reset sleeve 14 will lead to the reset slot 12 and reset hole 13 movement, when reset hole 13 again moved to the active plate 19 concentric position, active spring 27 push limit sleeve 11 lead to the slider 23 along the sliding slot 22 reset, then the limit sleeve 11 will lead to the limit rod 24 and limit plate reset, when the active spring 27 is completely reset, release reset sleeve 14, reset spring 15 push reset block 16 reset, then reset block 16 through reset sleeve 14 lead to the reset hole 13 and reset slot 12 movement, so that the reset hole 13 and reset slot 12 move to not with the active plate 19 and active rod 18 corresponding position, so that the active rod 18, active plate 19 and reset sleeve 14 cooperation on limit sleeve 11 limit, limit sleeve 11 with the slider 23 and sliding slot 22 limit on limit sleeve 11, so that the limit sleeve 11 will not move, at this time the limit sleeve 11 inner wall on the limit rod 24 outer end limit, prevent the limit rod 24 movement, then the limit rod 24 and limit slot 26 cooperation on the cooperation sleeve 3 form a limit, effectively prevent the cooperation sleeve 3 rotation, so as to ensure the stability of the fixed.

[0040] Please see Figures 1-4 As an embodiment of the cutting device: cutting device includes cutting knife 28, mounting plate 29, mounting block 30, drive frame 31, drive assembly 32, protective cover 33, movable frame 34 and sliding frame 35, mounting plate 29 and mounting block 30 are installed on both sides of cutting knife 28 respectively, drive frame 31 is arranged on sliding frame 35, drive assembly 32 is detachably installed on one side of drive frame 31, drive assembly 32 output end and mounting block 30 are detachably connected, sliding frame 35 is detachably installed between movable frame 34, movable frame 34 is arranged on base 1, protective cover 33 is detachably installed on one side of drive assembly 32.

[0041] Movable frame 34 and sliding frame 35 one side are detachably provided with motor 36, motor 36 output end, drive frame 31 and movable frame 34 one side are provided with transmission wheel 37, transmission wheel 37 outer side is provided with belt 38, and both ends of belt 38 are detachably connected with base 1.

[0042] Base 1 and sliding frame 35 inner side are detachably provided with slide rail 39, movable frame 34 and drive frame 31 inner side are movably provided with pulley 40, and pulley 40 rotationally arranged on both sides of slide rail 39.

[0043] More specifically, when the device needs to be used, first of all, the optical glass is installed inside the base 1 through the clamping device of the peripheral device, then first open the motor 36 arranged on one side of the movable frame 34, the motor 36 drives the transmission wheel 37 connected to the output end, then the transmission wheel 37 here will rotate along the belt 38, thereby driving the movable frame 34 and the sliding frame 35 to move along the belt 38 arranged on both sides of the base 1, at the same time, the movable frame 34 will drive the pulley 40 installed on the inside to rotate along the slide rail 39, thereby driving the sliding frame 35, the movable frame 34 and the driving frame 31 to move longitudinally along the slide rail 39 arranged on the base 1, after adjusting the longitudinal position, close the motor 36 arranged on one side of the movable frame 34, then open the motor 36 installed on one side of the driving frame 31 according to the above operation, so that the driving frame 31 drives the driving assembly 32 to move transversely along the slide rail 39 arranged on the inside of the sliding frame 35, after adjusting appropriately, close the motor 36 here, then open the driving assembly 32, so that the driving assembly 32 drives the slitting knife 28 to run, at the same time, open the motor 36 arranged on one side of the driving frame 31, thereby carrying out slitting processing on the optical glass.

[0044] In summary, when the device is in use or operation: when the slitting knife 28 needs to be replaced, first rotate the reset sleeve 14, which drives the reset block 16 to rotate, then the reset block 16 will cooperate with the connecting block 17 to press the reset spring 15, at the same time the reset sleeve 14 will drive the reset slot 12 and the reset hole 13 to rotate, when the reset spring 15 is pressed to the limit, the reset hole 13 moves to the position concentric with the movable plate 19, then pushes the limiting sleeve 11, which will drive the movable plate 19, the movable rod 18 and the sliding block 23 to slide along the sliding groove 22, at the same time the limiting sleeve 11 will cooperate with the reset sleeve 14 to press the movable spring 27 outside the movable rod 18, when the movable spring 27 is pressed to the limit, the corresponding movable plate 19 just passes through the reset hole 13 and reaches the side of the reset sleeve 14, then release the reset sleeve 14, the reset spring 15 will push the reset block 16 to reset, then the reset block 16 will drive the reset sleeve 14 to rotate and reset, then the reset sleeve 14 will drive the reset slot 12 and the reset hole 13 to rotate, then the movable rod 18 will enter the reset slot 12, then the movable rod 18 and the corresponding movable plate 19 cooperate to limit the limiting sleeve 11 to one side of the reset sleeve 14, at this time the outer end of the limiting rod 24 loses the limiting of the limiting sleeve 11, then rotate the fitting sleeve 3, which will drive the limiting rod 24 set on the side wall to move, then the side wall of the limiting slot 26 presses one end of the limiting rod 24, due to the round corner design of the edge of the limiting slot 26 and the end of the limiting rod 24, then the end of the limiting rod 24 slides out of the limiting slot 26, then the other end of the limiting rod 24 will drive the connecting spring 25 to stretch, at the same time the fitting sleeve 3 will drive the fitting block 8 to rotate through the fitting plate 5, then the fitting block 8 will rotate along the fitting slot 4, due to the spiral structure design of the fitting slot 4, at the same time due to the limiting of the splicing frame 21, then the fitting sleeve 6 will drive the fitting slot 4 and the fitting slot 10 to slide, due to the special structure design of the fitting slot 10, when the fitting slot 10 slides with the fitting sleeve 6, the fitting rod 9 will drive the splicing frame 21 to slide out of the splicing slot 20, then pull the splicing sleeve 2 to one side, that is, the splicing sleeve 2 can be removed, then remove the mounting plate 29, then remove the slitting knife 28, then replace the slitting knife 28, then make the splicing rod 7 fixedly connected to one side of the mounting block 30 pass through the mounting hole reserved on the slitting knife 28 and the mounting plate 29, then fit the splicing sleeve 2 to the outside of the splicing rod 7 from the other side of the mounting plate 29, then rotate the fitting sleeve 3 in the opposite direction, which will drive the fitting block 8 to rotate through the fitting plate 5 connected on one side, then make the fitting sleeve 6 drive the fitting slot 10 and the fitting slot 4 to slide and reset through the cooperation of the fitting block 8 and the fitting slot 4, then the fitting rod 9 will slide and reset in the fitting slot 10, at the same time the fitting rod 9 will drive the splicing frame 21 to slide and insert into the splicing slot 20, at this time the connecting spring 25 drives the limiting rod 24 to reset, so that the limiting rod 24 is inserted into the original limiting slot 26 again, then rotate the reset sleeve 14 again, which drives the reset block 16, the reset slot 12 and the reset spring 15 to move,Then reset block 16 and connecting block 17 cooperate with the reset spring 15 extrusion, while the reset sleeve 14 will drive reset slot 12 and reset hole 13 movement, when reset hole 13 again moves to the concentric position with the movable plate 19, the movable spring 27 pushes the limit sleeve 11 drive the slider 23 along the sliding slot 22 to slide reset, then the limit sleeve 11 will drive the limit rod 24 and the limit plate to slide reset, when the movable spring 27 is fully reset, release the reset sleeve 14, the reset spring 15 pushes the reset block 16 reset, then the reset block 16 through the reset sleeve 14 drive reset hole 13 and reset slot 12 movement, so that the reset hole 13 and reset slot 12 move to the position not corresponding to the movable plate 19 and the movable rod 18, so that the movable rod 18, the movable plate 19 and the reset sleeve 14 cooperate with the limit sleeve 11, cooperate with the slider 23 and the sliding slot 22 to limit the limit sleeve 11, so that the limit sleeve 11 will not move, the inner wall of the limit sleeve 11 limits the outer end of the limit rod 24, preventing the limit rod 24 from moving, then the limit rod 24 and the limit slot 26 cooperate with the mating sleeve 3 to form a limit, effectively preventing the rotation of the mating sleeve 3, thereby ensuring the stability of the fixed.

[0045] When the device is needed, first install the optical glass into the base 1 through the clamping device of the external device, then first open the motor 36 arranged on one side of the movable frame 34, the motor 36 drives the transmission wheel 37 connected to the output end, then the transmission wheel 37 here will rotate along the belt 38, thereby driving the movable frame 34 and the sliding frame 35 to move along the belt 38 arranged on both sides of the base 1, at the same time, the movable frame 34 will drive the pulley 40 installed on the inner side to rotate along the slide rail 39, thereby driving the sliding frame 35, the movable frame 34 and the driving frame 31 to move longitudinally along the slide rail 39 arranged on the base 1, after adjusting the longitudinal position, close the motor 36 arranged on one side of the movable frame 34, then open the motor 36 installed on one side of the driving frame 31 according to the above operation, so that the driving frame 31 drives the driving assembly 32 to move in the transverse position along the slide rail 39 arranged on the inner side of the sliding frame 35, after adjusting appropriately, close the motor 36 here, then open the driving assembly 32, so that the driving assembly 32 drives the slitting cutter 28 to operate, at the same time, open the motor 36 arranged on one side of the driving frame 31, thereby cutting the optical glass.

[0046] In all the schemes mentioned above, the connection between the two components can be selected according to the actual situation, such as welding, bolt and nut cooperation connection, bolt or screw connection or other known connection mode, which will not be described one by one, in the above, whenever it is mentioned that it is fixedly connected, it is preferred to consider welding, although the embodiments of the utility model have been shown and described, those skilled in the art can understand that the embodiments can be changed, modified, replaced and modified in various ways without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A slitting device for optical glass manufacturing comprising a base (1), characterized in that: The base (1) is provided with a slitting device, and the base (1) is provided with a splicing device, the splicing device comprises a splicing sleeve (2), a matching sleeve (3), a matching groove (4), a matching plate (5), an adaptive sleeve (6), a clamping mechanism, a splicing rod (7), a matching block (8), an adaptive rod (9) and an adaptive groove (10), the matching sleeve (3) is sleeved outside the splicing sleeve (2), the matching groove (4) is spirally arranged outside the matching sleeve (3), the matching block (8) is connected through the matching plate (5) and the matching sleeve (3), the adaptive sleeve (6) is sleeved outside the splicing sleeve (2), the adaptive rod (9) is arranged in the adaptive groove (10), the adaptive groove (10) is arranged inside the adaptive sleeve (6), a limiting mechanism is arranged outside the splicing sleeve (2), the limiting mechanism comprises a limiting sleeve (11), a reset groove (12), a reset hole (13), a reset sleeve (14), a reset spring (15), a reset block (16), a connecting block (17), a movable rod (18) and a movable plate (19), the reset groove (12) is arranged on the reset sleeve (14), the reset hole (13) is arranged at one end of the reset groove (12), the reset spring (15) is connected with the reset block (16) and the connecting block (17) at two ends, the movable rod (18) is connected at one side of the limiting sleeve (11), and the movable plate (19) is arranged on the movable rod (18).

2. The slitting device for optical glass manufacturing according to claim 1, wherein: The clamping mechanism comprises a splicing groove (20) and a splicing frame (21), the splicing frame (21) is slidably arranged on the side wall of the splicing sleeve (2), the splicing groove (20) is arranged outside the splicing rod (7), and one end of the splicing rod (7) is inserted into the splicing groove (20), and the adaptive rod (9) is fixedly arranged on both sides of the splicing frame (21).

3. The slitting apparatus for optical glass manufacturing according to claim 1, characterized in that: A sliding groove (22) is arranged outside the splicing sleeve (2), a sliding block (23) is arranged inside the limiting sleeve (11), and the sliding block (23) is slidably arranged in the sliding groove (22).

4. The slitting device for optical glass manufacturing according to claim 3, wherein: A limiting rod (24) is slidably arranged on the side wall of the matching sleeve (3), one end of the limiting rod (24) is connected with a connecting spring (25), one end of the limiting rod (24) is connected with the outer wall of the matching sleeve (3) through the connecting spring (25), a plurality of limiting grooves (26) are arranged outside the splicing sleeve (2), and the other end of the limiting rod (24) is inserted into the limiting groove (26).

5. A slitting apparatus for optical glass manufacturing according to claim 4, characterized in that: An active spring (27) is sleeved outside the movable rod (18), one end of the active spring (27) is connected with the limiting sleeve (11), and the other end of the active spring (27) is connected with the reset sleeve (14) in a contact mode.

6. The apparatus according to any one of claims 1 to 5, wherein: the apparatus is characterized by further comprising a cutting device for cutting the glass ribbon into a predetermined size. Said cutting device includes a cutting knife (28), a mounting plate (29), a mounting block (30), a drive frame (31), a drive assembly (32), a protective cover (33), a movable frame (34) and a sliding frame (35), the mounting plate (29) and the mounting block (30) are respectively mounted on both sides of the cutting knife (28), the drive frame (31) is arranged on the sliding frame (35), the drive assembly (32) is detachably mounted on one side of the drive frame (31), the output end of the drive assembly (32) is detachably connected with the mounting block (30), the sliding frame (35) is detachably mounted between the movable frame (34), the movable frame (34) is arranged on the base (1), and the protective cover (33) is detachably mounted on one side of the drive assembly (32).

7. The slitting device for optical glass manufacturing according to claim 6, wherein: The movable frame (34) and the sliding frame (35) are detachably provided with a motor (36) on one side, the output end of the motor (36), the drive frame (31) and one side of the movable frame (34) are provided with a transmission wheel (37), the outer side of the transmission wheel (37) is provided with a belt (38), and the two ends of the belt (38) are detachably connected with the base (1).

8. The slitting device for optical glass manufacturing according to claim 7, wherein: The base (1) and the sliding frame (35) are detachably provided with a sliding rail (39) on the inner side, the movable frame (34) and the drive frame (31) are movably provided with a pulley (40) on the inner side, and the pulley (40) is rotatably arranged on both sides of the sliding rail (39).